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Experimental study on effect of surface vibration on micro textured surfaces with hydrophobic and hydrophilic materials

机译:表面振动对疏水性和亲水性材料在微织构表面的影响的实验研究

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Artificial hydrophobic surfaces have been studied in the last ten years in an effort to understand the effects of structured micro- and nano-scale features on droplet motion and self-cleaning mechanisms. Among these structured surfaces, micro-textured surfaces consisting of a combination of hydrophilic and hydrophobic materials have been designed, fabricated and characterized to understand how surface properties and morphology affect enhanced self-cleaning mechanisms. However, use of micro textured surfaces leads to a strong pinning effect that takes place between the droplets and the hydrophobic hydrophilic edge, leading to a significant contact angle hysteresis effect. This research study focuses on the effects of surface vibrations on droplet shedding at different inclined angles on micro-textured surfaces. Surface vibration and shedding processes were experimentally characterized using a high speed imaging system. Experimental results show that droplets under the influence of surface vibration depict different contour morphologies when vibrating at different resonance frequencies. Moreover, droplet sliding angles can be reduced through surface vibration when the proper combination of droplet size and surface morphology is prescribed. (C) 2017 Elsevier B.V. All rights reserved.
机译:在过去的十年中,已经研究了人造疏水表面,以了解结构化的微米级和纳米级特征对液滴运动和自清洁机制的影响。在这些结构化表面中,已经设计,制造和表征了由亲水性和疏水性材料组成的微纹理化表面,以了解表面特性和形态如何影响增强的自清洁机制。但是,使用微纹理表面会导致在液滴和疏水性亲水边缘之间发生强烈的钉扎效应,从而导致明显的接触角滞后效应。这项研究专注于表面振动对微织构表面上不同倾斜角度的液滴脱落的影响。使用高速成像系统对表面振动和脱落过程进行了实验表征。实验结果表明,以不同的共振频率振动时,受表面振动影响的液滴描绘出不同的轮廓形态。而且,当规定了液滴尺寸和表面形态的适当组合时,可以通过表面振动来减小液滴滑动角。 (C)2017 Elsevier B.V.保留所有权利。

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